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1. Yoghurt Intake and Gastric Cancer: A Pooled Analysis of 16 Studies of the StoP Consortium

2. Tea consumption and gastric cancer: a pooled analysis from the Stomach cancer Pooling (StoP) Project consortium

4. A global metagenomic map of urban microbiomes and antimicrobial resistance.

6. Beyond tobacco: genomic disparities in lung cancer between smokers and never-smokers

7. Variability and bias in microbiome metagenomic sequencing: an interlaboratory study comparing experimental protocols

8. A transcriptome-based signature of pathological angiogenesis predicts breast cancer patient survival.

9. Tracking SARS-CoV-2 variants of concern in wastewater: an assessment of nine computational tools using simulated genomic data

11. Expression of Truncated Products at the 5′-Terminal Region of RIPK2 and Evolutive Aspects that Support Their Biological Importance.

13. Tracking SARS-CoV-2 variants of concern in wastewater: an assessment of nine computational tools using simulated genomic data

14. Annotating unknown species of urban microorganisms on a global scale unveils novel functional diversity and local environment association

15. A probiotic has differential effects on allergic airway inflammation in A/J and C57BL/6 mice and is correlated with the gut microbiome

16. Correction to: A probiotic has differential effects on allergic airway inflammation in A/J and C57BL/6 mice and is correlated with the gut microbiome

17. Supplementary Figure 1 from Intake of Proton-Pump Inhibitors and Gastric Cancer within the Stomach Cancer Pooling (StoP) Project

18. Supplementary Table 3 from Intake of Proton-Pump Inhibitors and Gastric Cancer within the Stomach Cancer Pooling (StoP) Project

19. Supplementary Table 1 from Intake of Proton-Pump Inhibitors and Gastric Cancer within the Stomach Cancer Pooling (StoP) Project

20. Data from Intake of Proton-Pump Inhibitors and Gastric Cancer within the Stomach Cancer Pooling (StoP) Project

21. Supplementary Table 4 from Intake of Proton-Pump Inhibitors and Gastric Cancer within the Stomach Cancer Pooling (StoP) Project

22. Supplementary Figure 2 from Intake of Proton-Pump Inhibitors and Gastric Cancer within the Stomach Cancer Pooling (StoP) Project

23. Supplementary Table 2 from Intake of Proton-Pump Inhibitors and Gastric Cancer within the Stomach Cancer Pooling (StoP) Project

24. Maternal supplementation with a synbiotic has distinct outcomes on offspring gut microbiota formation in A/J and C57BL/6 mice, differentially affecting airway inflammatory cell infiltration and mucus production

25. PRUNE2 is a human prostate cancer suppressor regulated by the intronic long noncoding RNA PCA3

26. Impact of ypT, ypN, and Adjuvant Therapy on Survival in Gastric Cancer Patients Treated with Perioperative Chemotherapy and Radical Surgery

28. Metabarcoding approach to identify bacterial community profiling related to nosocomial infection and bacterial trafficking-routes in hospital environments

29. Intake of Proton-Pump Inhibitors and Gastric Cancer within the Stomach Cancer Pooling (StoP) Project

31. Metagenomic analysis of colorectal cancer datasets identifies cross-cohort microbial diagnostic signatures and a link with choline degradation

32. A non-functional galanin receptor-2 in a multiple sclerosis patient

33. Variability and Bias in Microbiome Metagenomic Sequencing: an Interlaboratory Study Comparing Experimental Protocols

36. Data from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

37. Supplementary Table 8 from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

38. Supplementary Table 3 from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

39. Supplementary Table 6 from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

40. Supplementary Table 2 from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

41. Supplementary Figure 1 from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

42. Supplementary Methods from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

43. Supplementary Table 7 from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

44. Supplementary Table 5 from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

45. Supplementary Table 4 from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

46. Supplementary Table 1 from Large-scale Transcriptome Analyses Reveal New Genetic Marker Candidates of Head, Neck, and Thyroid Cancer

47. Towards a transcriptome-based theranostic platform for unfavorable breast cancer phenotypes

49. The Contribution of 700,000 ORF Sequence Tags to the Definition of the Human Transcriptome

50. Identification of Human Chromosome 22 Transcribed Sequences with ORF Expressed Sequence Tags

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